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Mapping Mount St. Helens
Students study topographic maps and contour lines and construct a simple three-dimensional model of Mount St. Helens before the May 18, 1980, eruption. They use topographic map skills to interpret the impact of the May 18, 1980, eruption...
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Lesson 2 Activity 2: Mapping Mount St. Helens
Students use topographic map skills to interpret impact of the May 18, 1980 eruption of Mount St. Helens on the volcano's topography, and draw profile views of Mount St. Helens before and after the May 18, 1980, eruption.
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Volcanoes!: The Mountain Blows its Top
Students observe two demonstrations to conclude why bulge developed on the north flank of Mount St. Helens and conclude that when the "cap" was removed the pressure inside the volcano was suddenly released causing the violent eruption.
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Volcanoes!: Eyewitness Accounts
Students review previous lessons about volcanoes and name the phenomena they think the eyewitnesses of the Mount St. Helens witnessed. They play the roles of reporter, eyewitness and scientists who are serving on a committee...
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Death and Recovery
Mount St. Helens erupted on May 18, 1980, devastating plant and animal life for miles around. Two activities are included in this lesson plan. In one, learners evaluate tree rings to determine the age of a tree and the year of a volcano....
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Shake, Rattle, and Roll: Mt. St. Helens - Lesson Plan 2
Students compile information on volcanic activity at Mount St. Helens. In this earth science lesson, students use the information they gathered on Mount St. Helens to answer questions and create charts in Excel. Then students compare...
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Volcanoes and People
Students discover that volcanic eruptions are geologic events that take place within the upper part and on the surface of the Earth's lithosphere. They explain how volcanoes are related to the Earth's lithosphere. They focus on the May...
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Mount St. Helens Shakes and Burps
Students uncover the nature of volcanoes and locate some of the world's active, dormant, and extinct volcanoes. They also discover how scientists detect, measure, and predict volcanic activity.
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Creating a Legend
Students create a legend that explains the existence of Mount St. Helens. They discuss how natural occurences often have no clear explanation. After listening to legends concerning the formation of Mt. St. Helens, students create their...
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Eyewitness Accounts
Young scholars use eyewitness accounts to gather and evaluate information about the events of the May 18, 1980, eruption of Mount St. Helens. They play the following roles: reporter(s), eyewitnesses, and scientists who are investigating...
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A Site to See
Students identify the risks and benefits of living next to a volcano. After reading an article, they discuss the behaviors of an active volcano. Using the Internet, they work together to research volcano-monitoring techniques and create...
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Volcano Hazards
Students research volcano hazards in VolcanoWorld, make a paper volcano, produce and watch the effects of ashfall, produce and watch the effects of a mudflow and create a hazard map by plotting historical ashfall/mudflow data from Mount...
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Lesson 4: Fire, Rock, and Water
You can demonstrate the destructive force of volcanic mudflows to your early earth scientists using this lesson plan. Messy, but memorable, the two demonstrations require some preparation. Use one or both! Included is a link to activity...
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Mountain Myths
Students become familiar with Native American myths and legends created to explain volcanic activity. They apply the clustering, writing process and peer-editing techniques to the writing of an original myth about Mount St. Helens
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Forcasting the Path of Mudflows
Pupils visualize consistency of mudflows and how they move down stream valleys away from a volcano's summit. They use topographic maps of Mount St. Helens before the 1980 eruptions to forecast the path mudflows might take during an...
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Eyewitness Accounts
Students role-play to show the eyewitness accounts of the eruption of Mt. St. Helens. In this volcanic eruption lesson, students act as reporters, eyewitnesses, and scientists to dramatize the eruption of Mt. St. Helens. They discuss the...
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Volcanoes: Windows Into The Earth
Students investigate the concepts related to volcanoes and focus upon Mt. St. Helens. They define the difference between an active and dormant volcano. They conduct research using a variety of resources. The information is used in order...
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A Place in Time
Students become familiar with an eruptive history and related world events and impart a sense of the immensity of geological time. They explore timelines by creating their own, then are introduced to major eruptive periods of Mount St....
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Looking Back to 1980
Young scholars use clustering/mind mapping techniques to generate ideas, graphically represent inferences, organize their conclusions and write a report that presents conclusions the writer has reached, and facts substantiating those...
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There's a Volcano in my Backyard!
Students utilizing a volcanic hazard map of Mount Rainier, reach conclusions about the potential hazards of future eruptions. They create educational materials about these hazards and what to do if one erupts again in the future.
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Volcanoes!
Learners study the Mount St. Helens eruption and how it occurred. In this experimental lesson students complete a lab that shows the eruption of Mount St. Helens.
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The Mountain Blows its Top
Students replicate a volcanic eruption. In this volcanoes lesson, students follow the provided procedures to show and describe how the inflation of a bulge led to the eruption of Mount St. Helens.
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Evacuating a Volcano: A Simulation
Students imagine themselves staying for the weekend in a summer cabin near Mount St. Helens (or other volcanic site,) and having to quickly evacuate the area.
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Ape Cave
Learners prepare for a field trip to Mount St. Helens National Volcanic Monument and exploration of Ape Cave (see also Ape Cave Exploration). In the absence of a field trip, students become acquainted with lava tubes in general.